DocumentCode :
1805001
Title :
Hysteresis characteristics of electric induction and electric field in nonlinear capacitors
Author :
Rim, G.-H. ; Pavlov, E.-P. ; Jeong, A.I.-W.
Author_Institution :
Korea Electrotechnol. Res. Inst., Changwon, South Korea
fYear :
2001
fDate :
17-22 June 2001
Firstpage :
430
Abstract :
Summary form only given. The properties of nonlinear capacitance provoke the interest of design engineers in the area of repetitive pulse generators of high voltage nanosecond pulse width. The voltage amplification effects of ceramic capacitors are based on the reduction of capacitance value to approximately one tenth after passing a given amount of charge. To make a pulse generator using this kind of nonlinear capacitors,it is necessary to have information about the parameter changes in linear and nonlinear areas. Through this study an attempt was made to find definite characteristics of BaTiO/sub 3/ ceramic capacitors, DE1207F103Z2K manufactured by Murata Co. The rated DC capacitance and voltage of the device were 10nF and 2kV, respectively. The experimental relationships of electric induction, D = E [V/m], and electric displacement field Q/S[C/m2] versus electric field E[V/m] for the capacitors were obtained for several current values. For each current the nonlinear permittivity, changes of the capacitor in the linear and nonlinear area showed hysteresis characteristics analogous to B-H curves in magnetic materials. The experimental results showed that the use of such types of capacitor in designing repetitive nanosecond high voltage pulse generators has good prospects.
Keywords :
barium compounds; ceramic capacitors; electric fields; electromagnetic induction; hysteresis; permittivity; pulse generators; 10 nF; 2 kV; BaTiO/sub 3/; DC capacitance; DE1207F103Z2K; capacitance; ceramic capacitors; electric displacement field; electric field; electric induction; high voltage generator; hysteresis characteristics; linear areas; nanosecond pulse width generator; nonlinear areas; nonlinear capacitors; nonlinear permittivity; repetitive nanosecond high voltage pulse generators; repetitive pulse generators; voltage; voltage amplification effects; Capacitance; Capacitors; Ceramics; Design engineering; Magnetic hysteresis; Manufacturing; Pulse amplifiers; Pulse generation; Space vector pulse width modulation; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Plasma Science, 2001. IEEE Conference Record - Abstracts
Conference_Location :
Las Vegas, NV, USA
Print_ISBN :
0-7803-7141-0
Type :
conf
DOI :
10.1109/PPPS.2001.961181
Filename :
961181
Link To Document :
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